Capcha Inga, Paola VeronicaOliva Rojas, LuisChumbimune Vivanco, Sheyla YanettAmézquita León, Carlos AlbertoPaz Monge, MichelOrtega Quispe, Kevin Abner2026-09-022026-09-022026-06-10Capcha-Inga, P., Oliva-Rojas, L., Chumbimune-Vivanco, S. Y., Amézquita-León, C., Paz-Monge, M., & Ortega-Quispe, K. (2026). Growth dynamics, harvest performance, and biomass partitioning of lettuce cultivars under contrasting hydroponic configurations: Implications for sustainable protected horticulture. Organic Farming, 12(2), 98–117. https://doi.org/10.56578/of1202033134-6014http://hdl.handle.net/20.500.12955/3256White Boston, Waldmann's Green, and Black Rose—grown in pyramidal nutrient film technique (NFT), floating raft (FR), and semihydroponic (SH) configurations. The experiment included 36 units and 192 plants. Nondestructive measurements were performed at 30 and 60 days after sowing, followed by destructive harvest measurements at 60 days. Temporal changes and cultivar responses were evaluated separately within each configuration because hydraulically independent units differed among configurations; between-configuration patterns were interpreted descriptively. Most temporal changes were similar among cultivars. At harvest, cultivar-dependent responses were configuration-specific and involved morphology, leaf fresh weight, total dry matter content, and biomass allocation. Total fresh and dry weight did not differ significantly among cultivars within any configuration. Nevertheless, FR–White Boston showed the highest numerical total fresh weight (189.96 ± 48.90 g plant⁻¹), whereas FR–Black Rose showed the greatest leaf fresh-weight proportion (81.0%). Waldmann's Green showed comparatively high total dry matter content, including 5.18% in FR, where cultivar differences were statistically supported. The first two principal components explained 56.9% of the total variance and revealed overlapping multivariate patterns among configuration × cultivar combinations. Overall, cultivar performance depended on the trait and cultivation configuration: White Boston was associated with higher numerical fresh biomass, Black Rose with greater leaf biomass allocation, and Waldmann's Green with comparatively higher dry matter content. These findings provide an agronomic basis for cultivar selection in protected hydroponic production.application/pdfenginfo:eu-repo/semantics/openAccesshttp://creativecommons.org/licenses/by/4.0/Controlled-environment agricultureAgricultura de ambiente controladoBiomass partitioningPartición de biomasaCultivar responseRespuesta de cultivarHydroponic systemsSistemas hidropónicosLettuceLechugaSustainable protected horticultureHorticultura protegida sostenibleCrop managementManejo de cultivosGrowth dynamics, harvest performance, and biomass partitioning of lettuce cultivars under contrasting hydroponic configurations: Implications for sustainable protected horticultureinfo:eu-repo/semantics/articlehttps://purl.org/pe-repo/ocde/ford#4.01.06https://doi.org/10.56578/of120203Hydroponics, Cultivo hidropónico; Lettuces, Lechuga; Biomass, Biomasa; Varieties, Variedad; Crop management, Manejo del cultivo; Protected cultivation, Cultivo protegido